Patents Assigned to Methodist Hospital of Indiana
  • Patent number: 6054287
    Abstract: A mathematical model, the membranes and devices based upon that model to optimize protocols for the addition or removal of cryoprotectant to or from biological cells, and a method to observe the biological cells and obtain the data to implement the models. This disclosure describes the use of four equations to predict optimal protocols to add or remove cryoprotectant to or from biological cells. The equations particularly require experimentally found data, specific to cell-type and species, regarding the osmotic tolerance of the cells, where osmotic tolerance refers to the cells ability to shrink or swell to various changes in osmolality without injury. The equations further require the cryoprotectant permeability coefficient and the water permeability coefficient of the particular cells' plasma membrane.
    Type: Grant
    Filed: February 27, 1998
    Date of Patent: April 25, 2000
    Assignee: Methodist Hospital of Indiana, Inc.
    Inventors: Dayong Gao, John K. Critser
  • Patent number: 5997575
    Abstract: A perforated unitary multi-laminar tissue graft construct and method for preparing such construct is described. The method comprises overlapping strips of submucosa tissue with other strips of submucosal tissue, compressing at least the overlapped portions of said strips between two surfaces under conditions that allow or promote dehydration of the compressed submucosa sheets, and perforating the resulting unitary tissue graft construct. The perforated tissue graft compositions have enhanced mechanical and remodeling properties relative to non-perforated submucosal tissue grafts.
    Type: Grant
    Filed: September 18, 1997
    Date of Patent: December 7, 1999
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana, Inc.
    Inventors: Bryan Whitson, Boyle Cheng, Stephen F. Badylak
  • Patent number: 5955110
    Abstract: Multi-laminar tissue graft constructs, pseudoisotropic graft constructs and a method of preparing such constructs are described. Multi-laminar tissue graft constructs are prepared by fusing partially overlapped strips of submucosa tissue into a unitary graft construct by compressing the tissue under dehydrating conditions. Pseudoisotropic tissue graft constructs are prepared by overlapping a first strip of submucosa tissue with at least two strips of submucosa tissue orientated so that the longitudinal axis of each strip formts an angle of about 180.degree./N with the longitudinal axes of at least two other strips of submucosal tissue.
    Type: Grant
    Filed: November 12, 1996
    Date of Patent: September 21, 1999
    Assignees: Purdue Research Foundation, Inc., Methodist Hospital of Indiana, Inc.
    Inventors: Umesh H. Patel, Michael C. Hiles, Bryan A. Whitson, Boyle Cheng, Stephen F. Badylak, Klod Kokini
  • Patent number: 5885619
    Abstract: A unitary heterolaminar tissue graft construct is prepared by fusing partially overlapped strips or sheets of submucosa tissue. The submucosa components are fused by compressing at least the overlapped positions of said strips between two surfaces under conditions that allow or promote dehydration of the compressed submucosa sheets. Three dimensional graft constructs can be prepared by using complementary non-planar compressive surfaces.
    Type: Grant
    Filed: September 16, 1997
    Date of Patent: March 23, 1999
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana, Inc.
    Inventors: Umesh H. Patel, Michael C. Hiles, Bryan Whitson, Boyle Cheng, Stephen F. Badylak, Klod Kokini
  • Patent number: 5776769
    Abstract: A mathematical model, and membranes and devices based upon that model, to optimize protocols for the addition or removal of cryoprotectant to or from biological cells. This disclosure describes the use of four equations to predict optimal protocols to add or remove cryoprotectant to or from biological cells. The equations particularly require experimentally found data, specific to cell-type and species, regarding the osmotic tolerance of the cells, where osmotic tolerance refers to the cells ability to shrink or swell to various changes in osmolality without injury. The equations further require the cryoprotectant permeability coefficient and the water permeability coefficient of the particular cells' plasma membrane. These coefficients are found with experimental data of the knetic volume change of the cell-type to a known concentration and temperature of cryoprotectant.
    Type: Grant
    Filed: June 7, 1995
    Date of Patent: July 7, 1998
    Assignee: Methodist Hospital of Indiana
    Inventors: John K. Critser, D. Y. Gao, Robert J. Demeter
  • Patent number: 5762966
    Abstract: A method for surgical repair of a diseased or damaged bladder is described. Diseased or damaged bladder tissue is surgically replaced with submucosal tissue of a warm blooded vertebrate to promote regrowth of endogenous urinary bladder tissue.
    Type: Grant
    Filed: January 15, 1997
    Date of Patent: June 9, 1998
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana
    Inventors: Peter M. Knapp, Jr., James E. Lingeman, Robert J. Demeter, Stephen F. Badylak
  • Patent number: 5755791
    Abstract: A perforated unitary multi-laminar tissue graft construct and method for preparing such construct is described. The method comprises overlapping strips of submucosa tissue with other strips of submucosal tissue, compressing at least the overlapped portions of said strips between two surfaces under conditions that allow or promote dehydration of the compressed submucosa sheets, and perforating the resulting unitary tissue graft construct. The perforated tissue graft compositions have enhanced mechanical and remodeling properties relative to non-perforated submucosal tissue grafts.
    Type: Grant
    Filed: April 5, 1996
    Date of Patent: May 26, 1998
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana
    Inventors: Bryan Whitson, Boyle Cheng, Stephen F. Badylak
  • Patent number: 5753427
    Abstract: A mathematical model, and membranes and devices based upon that model, to optimize protocols for the addition or removal of cryoprotectant to or from biological cells. This disclosure describes the use of four equations to predict optimal protocols to add or remove cryoprotectant to or from biological cells. The equations particularly require experimentally found data, specific to cell-type and species, regarding the osmotic tolerance of the cells, where osmotic tolerance refers to the cells ability to shrink or swell to various changes in osmolality without injury. The equations further require the cryoprotectant permeability coefficient and the water permeability coefficient of the particular cells' plasma membrane. These coefficients are found with experimental data of the knetic volume change of the cell-type to a known concentration and temperature of cryoprotectant.
    Type: Grant
    Filed: June 7, 1995
    Date of Patent: May 19, 1998
    Assignee: Methodist Hospital of Indiana
    Inventors: John K. Critser, Dayong Gao
  • Patent number: 5722393
    Abstract: An improved ventilator apparatus and method includes a ventilator having an inspiration side for delivery of air to a patient and an expiration side for receiving air from the patient, the expiration side including an air flow path through the ventilator for monitoring of the expired air, a first conduit connecting the inspiration side of the ventilator to the patient, a second conduit communicating expiration air from the patient to an air cooler, and a third conduit coupling the outlet of the air cooler to the air flow path on the expiration side of the ventilator, the air cooler operating to cool the expired air to a temperature sufficiently low as to eliminate moisture condensation as the expired air passes through the flow path on the expiration side of the ventilator. The expired air is preferably cooled to about or below the temperature within the expiration side flow path.
    Type: Grant
    Filed: October 20, 1993
    Date of Patent: March 3, 1998
    Assignee: Methodist Hospital of Indiana, Inc.
    Inventors: Lawrence P. Bartel, Jeffery A. Attwood
  • Patent number: 5711969
    Abstract: A unitary heterolaminar tissue graft construct is prepared by fusing partially overlapped strips or sheets of submucosa tissue. The submucosa components are fused by compressing at least the overlapped positions of said strips between two surfaces under conditions that allow or promote dehydration of the compressed submucosa sheets. Three dimensional graft constructs can be prepared by using complementary non-planar compressive surfaces.
    Type: Grant
    Filed: April 7, 1995
    Date of Patent: January 27, 1998
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana
    Inventors: Umesh H. Patel, Michael C. Hiles, Bryan Whitson, Boyle Cheng, Stephen F. Badylak, Klod Kokini
  • Patent number: 5700632
    Abstract: A mathematical model, and membranes and devices based upon that model, to optimize protocols for the addition or removal of cryoprotectant to or from biological cells. This disclosure describes the use of four equations to predict optimal protocols to add or remove cryoprotectant to or from biological cells. The equations particularly require experimentally found data, specific to cell-type and species, regarding the osmotic tolerance of the cells, where osmotic tolerance refers to the cells ability to shrink or swell to various changes in osmolality without injury. The equations further require the cryoprotectant permeability coefficient and the water permeability coefficient of the particular cells' plasma, membrane. These coefficients are found with experimental data of the knetic volume change of the cell-type to a known concentration and temperature of cryoprotectant.
    Type: Grant
    Filed: June 7, 1995
    Date of Patent: December 23, 1997
    Assignee: Methodist Hospital of Indiana
    Inventors: John K. Critser, D. Y. Gao
  • Patent number: 5695998
    Abstract: A cell culture growth substrate comprising submucosal tissue of a warm-blooded vertebrate and a method for culturing eukaryotic cells are described. Submucosal tissue used in accordance with the present invention supports the proliferation and differentiation of eukaryotic cells when said cells are contacted with submucosal tissue under conditions conducive to cell proliferation.
    Type: Grant
    Filed: February 10, 1995
    Date of Patent: December 9, 1997
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana, Inc.
    Inventors: Stephen F. Badylak, George Boder, Sherry Voytik, Robert J. Demeter, John Critser, Chi Liu
  • Patent number: 5691133
    Abstract: A mathematical model to optimize protocols for the addition or removal of cryoprotectant to or from sperm cells. This disclosure describes the use of four equations to predict optimal protocols to add or remove cryoprotectant to or from sperm cells. The equations particularly require experimentally found date, specific to a species of sperm, regarding the osmotic tolerance of sperm cells, where osmotic tolerance refers to the sperm cells ability to shrink or swell to various changes in osmolality without injury. The equations further require the cryoprotectant permeability coefficient and the water permeability coefficient of the particular sperm cells' plasma membrane. Also disclosed are two particularly preferred methods to add or remove cryoprotectant to or from sperm. These preferred methods are Fixed-Volume-Step addition/removal of cryoprotectant or Fixed-Molarity-Step addition/removal of cryoprotectant.
    Type: Grant
    Filed: June 7, 1995
    Date of Patent: November 25, 1997
    Assignee: Methodist Hospital of Indiana
    Inventors: John K. Critser, D. Y. Gao
  • Patent number: 5645860
    Abstract: A method for surgical repair of a diseased or damaged bladder is described. Diseased or damaged bladder tissue is surgically replaced with submucosal tissue of a warm blooded vertebrate to promote regrowth of endogenous urinary bladder tissue.
    Type: Grant
    Filed: April 16, 1996
    Date of Patent: July 8, 1997
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana, Inc.
    Inventors: Peter M. Knapp, Jr., James E. Lingeman, Robert J. Demeter, Stephen F. Badylak
  • Patent number: 5641518
    Abstract: A method for repairing damaged or diseased bone is described. The method comprises the step of implanting into the damaged or diseased region a bone graft composition in powder form, the composition comprising the tunica submucosa delaminated from the tunica muscularis and at least the luminal portion of the tunica mucosa of a segment of vertebrate intestine.
    Type: Grant
    Filed: February 10, 1995
    Date of Patent: June 24, 1997
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana, Inc.
    Inventors: Stephen F. Badylak, Sherry Voytik
  • Patent number: 5611787
    Abstract: The present invention provides a method and device for placement of a gastric line in the digestive tract of a patient. A guide element is either formed integrally with the end of a gastric line or it is formed separately to be fixed on the end segment of a gastric line to reduce the flexibility of the gastric line segment and facilitate the positioning of the gastric line in a patient's digestive tract. The guide element is provided with means for slideably engaging a previously positioned transepiglottal guide line so that the guide element when engaged with the guide line, can be pushed down the guide line to position the gastric line in an esophageal or post-esophageal position. An optional mouthpiece is provided to receive and guide the gastric tube toward the middle of the posterior oral pharynx during insertion and to protect the gastric line from the biting surfaces of the teeth and maintain its position in the mouth after insertion.
    Type: Grant
    Filed: October 13, 1994
    Date of Patent: March 18, 1997
    Assignee: Methodist Hospital of Indiana, Inc.
    Inventors: Robert J. Demeter, Henry C. Bock, Dayong Gao
  • Patent number: 5595866
    Abstract: A mathematical model to optimize protocols for the addition or removal of cryoprotectant to or from sperm cells. This disclosure describes the use of four equations to predict optimal protocols to add or remove cryoprotectant to or from sperm cells. The equations particularly require experimentally found data, specific to a species of sperm, regarding the osmotic tolerance of sperm cells, where osmotic tolerance refers to the sperm cells ability to shrink or swell to various changes in osmolality without injury. The equations further require the cryoprotectant permeability coefficient and the water permeability coefficient of the particular sperm cells' plasma membrane. Also disclosed are two particularly preferred methods to add or remove cryoprotectant to or from sperm. These preferred methods are Fixed-Volume-Step addition/removal of cryoprotectant or Fixed-Molarity-Step addition/removal of cryoprotectant.
    Type: Grant
    Filed: May 27, 1994
    Date of Patent: January 21, 1997
    Assignee: Methodist Hospital of Indiana, Inc.
    Inventors: John K. Critser, Dayong Gao
  • Patent number: 5573784
    Abstract: Surgical repair of diseased or damaged endogenous connective tissue can be accomplished using a tissue graft formed from a delaminated segment of intestinal tissue. The tissue graft comprises the intestinal tunica submucosa delaminated from both the tunica muscularis and at least the luminal portion of the tunica mucosa. The graft can be conditioned by stretching and formed as a multilayer composition for high tensile strength and resistance to tearing at its points of attachment to existing physiological structures.
    Type: Grant
    Filed: April 18, 1995
    Date of Patent: November 12, 1996
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana, Inc.
    Inventors: Stephen F. Badylak, Leslie A. Geddes, K. Donald Shelbourne, Gary C. Lantz, Arthur C. Coffey
  • Patent number: 5516533
    Abstract: A fluidized, injectable tissue graft composition is described. The composition comprises comminuted intestinal submucosa or protease-digested intestinal submucosa. Methods for the preparation and use of injectable tissue graft compositions are described. In preferred embodiments the tissue graft material is prepared from the intestinal submucosa comprising the tunica submucosa, the muscularis mucosa and the stratum compactum of a segment of intestinal tissue of a warm-blooded vertebrate. Effective amounts of the fluidized graft compositions can be injected to promote repair tissue defects by inducing formation of endogenous tissues.
    Type: Grant
    Filed: November 22, 1994
    Date of Patent: May 14, 1996
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana, Inc.
    Inventors: Stephen F. Badylak, Robert J. Demeter, Michael Hiles, Sherry Voytik, Peter M. Knapp, Jr.
  • Patent number: 5445833
    Abstract: Surgical repair of diseased or damaged endogenous connective tissue can be accomplished using a tissue graft formed from a delaminated segment of intestinal tissue. The tissue graft comprises the intestinal tunica submucosa, and basilar mucosa tissue delaminated from the tunica muscularis and the luminal portion of the tunica mucosa. The graft can be conditioned by stretching and formed as a multilayer composition for high tensile strength and resistance to tearing at its points of attachment to existing physiological structures.
    Type: Grant
    Filed: December 15, 1993
    Date of Patent: August 29, 1995
    Assignees: Purdue Research Foundation, Methodist Hospital of Indiana, Inc.
    Inventors: Stephen F. Badylak, Leslie A. Geddes, K. Donald Shelbourne, Gary C. Lantz, Arthur C. Coffey